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The E2 admixture in mixed multipole line 647.6 nm in the spectrum of Bi I

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EN
Abstrakty
EN
A study of the hyperfine structure of mixed multipole line 646.7 nm of Bi I is reported. A special computer program was designed to obtain the predicted contour of the hyperfine structure of the line for different values of the electric-quadrupole admixture. By variation of free parameters, describing the line shape and the electric-quadrupole admixture D, defined as the ratio of the magnetic-dipole and electric-quadrupole decay rates D = AE2/(AM1 + AE2), the calculated profiles were fitted into the recorded spectra. The D value of the best fit found is (17.8 ± 1.0)%. Our result is compared with recent theories and other experiments.
Czasopismo
Rocznik
Strony
s. 535--541
Opis fizyczny
Bibliogr. 21 poz., tab., wykr.
Twórcy
autor
  • Institute of Experimental Physics, University of Gdańsk, Wita Stwosza 57, 80-952 Gdańsk, Poland
autor
Bibliografia
  • [1] GARSTANG R.H., Journal of Research of the National Bureau of Standards A: Physics and Chemistry 68, 1964, p. 61.
  • [2] CZERWIŃSKA J., Computer simulation of experimental Zeeman-effect patterns of forbidden lines of Bi I and Bi II and estimation of electric-quadrupole admixture in mixed-type radiation, Journal of the Optical Society of America B 4(9), 1987, pp. 1349–57.
  • [3] ROBERTS G.J., BAIRD P.E.G., BRIMICOMBE M.W.S.M., SANDARS P.G.H., SELBY D.R., STACEY D.N., The Faraday effect and magnetic circular dichroism in atomic bismuth, Journal of Physics B: Atomic and Molecular Physics 13(7), 1980, pp. 1389–402.
  • [4] HORODECKI P., KWELA J., SIENKIEWICZ J.E., Transition probabilities of forbidden lines in Pb I, European Physical Journal D 6, 1999, pp. 435–40.
  • [5] BIÉMONT E., QUINET P., Forbidden lines in 6pk (k = 1–5) configurations, Physica Scripta 54(1), 1996, pp. 36–43.
  • [6] PATEL D., PRITT A.T., Jr., COOMBE R.D., Radiative rate of the 6 2D3/2 state of atomic bismuth, Journal of Chemical Physics 76(12), 1982, pp. 6449–50.
  • [7] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure study of several lines of 207Pb I, Physica Scripta 71(3), 2005, pp. 274–6.
  • [8] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure study of several lines of 207Pb I – Part II, Physica Scripta 72(2–3), 2005, pp. 200–2.
  • [9] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure and isotope shift study in singly ionized lead, European Physical Journal D 36, 2005, pp. 249–55.
  • [10] MILIAŃCZUK B., Bulletin de l’Académie Polonaise des Sciences 1935, p. 430.
  • [11] GERJUOY E., Interference in the Zeeman Effect of Forbidden Lines, Physical Review 60(3), 1941, pp. 233–40.
  • [12] DEMBIŃSKI S.T., HELDT J., WOLNIEWICZ L., Zeeman effekt in the multipole line 4615 Å of Bi I, Journal of the Optical Society of America 62(4), 1972, pp. 555–61.
  • [13] HELDT J., KWELA J., Interference effects in mixed forbidden lines, Acta Physica Polonica A 66(5), 1984, pp. 461–91.
  • [14] COWEN R.D., The Theory of Atomic Structure and Spectra, University of California Press, Berkeley 1981.
  • [15] EDMONDS A.R., Angular Momentum in Quantum Mechanics, Princeton University Press, New Jersey 1957.
  • [16] LUCAS D.M., WARRINGTON R.B., THOMPSON C.D., STACEY D.N., Hyperfine structure, pressure shift and pressure broadening in the 648 nm transition of atomic bismuth by Faraday spectroscopy, Journal of Physics B: Atomic, Molecular and Optical Physics 27(22), 1994, pp. 5497–506.
  • [17] LANDMAN D.A., LURIO A., Hyperfine structure of the (6p)3 Configuration of Bi209, Physical Review A 1(5), 1970, pp. 1330–8.
  • [18] HÜHNERMANN H., Dissertation, Philips-Universitat Marburg/Lahn, 1967.
  • [19] MÜLLER G., Dissertation, Technische Universität Berlin, 1974.
  • [20] AUGUSTYNIAK L., HELDT J., BRONOWSKI J., Zeeman effect of the 647 mixed multipole line of bismuth, Physica Scripta 12, 1975, pp. 157–63.
  • [21] HELDT J., GIL T., ZACHARA S., HULTS M., Hyperfine structure intensity measurements as a tool for quadrupole radial integral determination, Journal of the Optical Society of America B 1(1), 1984, pp. 48–51.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a4790c2e-195c-4f36-ac65-dcf0442774b2
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